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Characterization of the Nonroad Modified Diesel Engine Using a Novel Entropy-VIKOR Approach: Experimental Investigation and Numerical Simulation

机译:使用新颖的熵 - 维京人方法表征非载波修改柴油机:实验研究和数值模拟

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摘要

Excessive use of diesel engines and continuous increase in environmental pollution has drawn the attention of researchers in the area of the compression ignition engine. In this research article, an innovative investigation of the nonroad modified diesel engine is reported with the effective use of the hybrid Entropy-VIKOR approach. Hence, it becomes necessary to prioritize and optimize the performance defining criteria, which provides higher BTE along with lower emission simultaneously. The engine load, injection timing (Inj Tim), injection pressure (Inj Pre), and compression ratio (Com R) were selected as engine operating parameters for experimentation at the constant speed of 1500 rpm engine. The effect on engine performance parameters (BTE and BSEC) and emission (carbon monoxide (CO), total oxide of carbon (TOC), oxides of nitrogen (NOx), hydrocarbon (HC), and smoke) was studied experimentally. The optimum results were observed at load 10.32 kg, Inj Tim 20 deg btdc, Inj Pre 210 bar, and Com R 21: 1 at which highest BTE of 22.24% and lowest BSEC of 16,188.5 kJ/kWh were obtained. Hybrid entropyVIKOR approach was applied to establish the optimum ranking of the nonroad modified diesel engine. The experimental results and numerical simulation show that optimizing the engine operating parameters using the entropy-VIKOR multicriteria decision-making (MCDM) technique is applicable.
机译:过度使用柴油发动机和持续增加的环境污染已经引起了压缩点火发动机领域的研究人员的注意。在本研究文章中,报告了对混合熵 - Vikor方法的有效利用,报告了对Nonroad改装柴油发动机的创新调查。因此,有必要优先考虑和优化定义标准的性能,其提供更高的BTE以及同时发射较低的发射。选择发动机负荷,注射定时(Inj Tim),注射压力(Inj Pre)和压缩比(COM r)作为发动机操作参数,用于以1500rpm发动机的恒定速度进行实验。实验研究了对发动机性能参数(BTE和BSEC)和发射(一氧化碳(CO),碳(TOC)的总氧化物,氮气(NOx),烃(HC)和烟雾)的影响。在负荷10.32 kg,inj 20 deg btdc,jot 210 bar和com r 21:1中观察到最佳结果,获得22.24%的最高BSEC和16,188.5kJ / kWh的最低BSEC。混合刺血管方法采用了建立了非载波修改柴油发动机的最佳排名。实验结果和数值模拟表明,使用熵-Vikor多铁架决策(MCDM)技术优化发动机操作参数。

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